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Science (New York, N.Y.)|January 12, 2023
Loss of a gluconeogenic muscle enzyme contributed to adaptive metabolic traits in hummingbirdsEkaterina Osipova, Rico Barsacchi, Tom Brown, et al.Plos Genetics|September 13, 2021
Deletion of lrrk2 causes early developmental abnormalities and age-dependent increase of monoamine catabolism in the zebrafish brainStefano Suzzi, Reiner Ahrendt, Stefan Hans, et al.Science Advances|July 29, 2022
Longer metaphase and fewer chromosome segregation errors in modern human than Neanderthal brain developmentFelipe Mora-Bermúdez, Philipp Kanis, Dominik Macak, et al.BMC Biology|May 20, 2026
Elevated retrocopy burden and sloth-specific expansions illuminate mammalian genome evolutionMarcela Uliano-Silva, Helena Beatriz da Conceição, Rafael L V Mercuri, et al.Plos Genetics|July 27, 2023
A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larvaAnastasia Shatilovich, Vamshidhar R Gade, Martin Pippel, et al.NPJ Genomic Medicine|April 3, 2025
Long-read genome and RNA sequencing resolve a pathogenic intronic germline LINE-1 insertion in APCAlexandra A Baumann, Lisanne I Knol, Marie Arlt, et al.Nature Communications|September 18, 2024
A comparative analysis of planarian genomes reveals regulatory conservation in the face of rapid structural divergenceMario Ivanković, Jeremias N Brand, Luca Pandolfini, et al.BMC Biology|January 30, 2020
The round goby genome provides insights into mechanisms that may facilitate biological invasionsIrene Adrian-Kalchhauser, Anders Blomberg, Tomas Larsson, et al.Nature|May 26, 2018
Author Correction: The axolotl genome and the evolution of key tissue formation regulatorsSergej Nowoshilow, Siegfried Schloissnig, Ji-Feng Fei, et al.Nature|January 25, 2018
The axolotl genome and the evolution of key tissue formation regulatorsSergej Nowoshilow, Siegfried Schloissnig, Ji-Feng Fei, et al.Pageof 6